Central Research Facility, Indian Institute of Technology Kharagpur Kharagpur, India.
Front Microbiol. 2013 Nov 21;4:332. doi: 10.3389/fmicb.2013.00332. eCollection 2013.
An antifungal lipopeptide fengycin, producing strain SM1 was isolated from farm land soil sample and identified as Bacillus thuringiensis strain SM1 by using 16S rDNA analysis. Fengycin detected in the culture extract was further purified using HPLC and showed a molecular mass of 1492.8 Da by MALDI-TOF-MS analysis. Purified fengycin was allowed to construct their self-assembled structure onto a hydrophobic surface showing a clear improvement of antibacterial activity. In self-assembly, fengycin adapts a spherical micelle core shell like structure. Self-assembled fengycin may be a successful antimicrobial compound modifying its action from confined antifungal function. Besides it can open up a new area of research in supramolecular lipopeptide based compound making. This can revealed the mode of action of this unique self-assembled structure to fully evaluate its potential for use as an antimicrobial drug to control the emergence of bacterial infection.
一种抗真菌脂肽丰原菌素,产生菌 SM1 从农田土壤样品中分离出来,并通过 16S rDNA 分析鉴定为苏云金芽孢杆菌 SM1 菌株。在培养提取物中检测到的丰原菌素进一步使用 HPLC 进行纯化,并通过 MALDI-TOF-MS 分析显示分子量为 1492.8 Da。纯化的丰原菌素被允许在疏水性表面上构建其自组装结构,显示出明显改善的抗菌活性。在自组装中,丰原菌素采用了球形胶束核壳样结构。自组装的丰原菌素可能是一种成功的抗菌化合物,通过改变其作用方式,从受限的抗真菌功能中获得改进。此外,它还可以开辟基于超分子脂肽的化合物制造的新研究领域。这可以揭示这种独特的自组装结构的作用模式,以充分评估其作为控制细菌感染出现的抗菌药物的潜在用途。